Planning for wolf-livestock coexistence: landscape context predicts livestock depredation risk in agricultural landscapes.
暂无分享,去创建一个
R. Wieland | S. Uthes | H. König | C. Kiffner | K. Kuhls | Verena Harms
[1] M. Heurich,et al. Large-Scale Sheep Losses to Wolves (Canis lupus) in Germany Are Related to the Expansion of the Wolf Population but Not to Increasing Wolf Numbers , 2022, Frontiers in Ecology and Evolution.
[2] Carolyn E. Dunford,et al. Environmental correlates of activity and energetics in a wide-ranging social carnivore , 2022, Animal Biotelemetry.
[3] E. Revilla,et al. Spatial ecology of conflicts: unravelling patterns of wildlife damage at multiple scales , 2021, Proceedings of the Royal Society B.
[4] D. Macdonald,et al. Robust mapping of human–wildlife conflict: controlling for livestock distribution in carnivore depredation models , 2021, Animal Conservation.
[5] H. Lentz,et al. Combined climate and regional mosquito habitat model based on machine learning , 2021, Ecological Modelling.
[6] M. Rivera-Ferre,et al. Nature’s contribution to people as a framework for examining socioecological systems: The case of pastoral systems , 2021, Ecosystem Services.
[7] A. Ford,et al. Integrated framework for stakeholder participation: Methods and tools for identifying and addressing human–wildlife conflicts , 2021, Conservation Science and Practice.
[8] Sean M. Johnson-Bice,et al. Wolves choose ambushing locations to counter and capitalize on the sensory abilities of their prey , 2021, Behavioral Ecology.
[9] A. Ford,et al. Green bridges in a re‐colonizing landscape: Wolves (Canis lupus) in Brandenburg, Germany , 2021, Conservation Science and Practice.
[10] M. Ryżak,et al. Heart rate variability in Konik and purebred Arabian horses in response to different predator vocalisations. , 2020, Animal : an international journal of animal bioscience.
[11] M. Krofel,et al. Communication hubs of an asocial cat are the source of a human–carnivore conflict and key to its solution , 2020, Proceedings of the National Academy of Sciences.
[12] A. Ford,et al. Human–wildlife coexistence in a changing world , 2020, Conservation biology : the journal of the Society for Conservation Biology.
[13] W. Ripple,et al. Grey wolf (Canis lupus) predation on livestock in relation to prey availability , 2020 .
[14] A. Kirschbaum,et al. Predicting livestock depredation risk by African lions (Panthera leo) in a multi-use area of northern Tanzania , 2020, European Journal of Wildlife Research.
[15] L. Boitani,et al. Social, behavioural and temporal components of wolf ( Canis lupus ) responses to anthropogenic landscape features in the central Apennines, Italy , 2019, Journal of Zoology.
[16] G. Chapron,et al. Germany's wolves in the crosshairs , 2019, Science.
[17] K. Böhning‐Gaese,et al. Attitudes towards returning wolves (Canis lupus) in Germany: Exposure, information sources and trust matter , 2019, Biological Conservation.
[18] C. Nowak,et al. Military training areas facilitate the recolonization of wolves in Germany , 2019, Conservation Letters.
[19] I. Gordon,et al. Review: Livestock production increasingly influences wildlife across the globe. , 2018, Animal : an international journal of animal bioscience.
[20] L. Boitani,et al. Determinants of home range size and space use patterns in a protected wolf (Canis lupus) population in the central Apennines, Italy , 2018, Canadian Journal of Zoology.
[21] Lily M. van Eeden,et al. Managing conflict between large carnivores and livestock , 2018, Conservation biology : the journal of the Society for Conservation Biology.
[22] L. Boitani,et al. Wolf predation on cattle in Portugal: Assessing the effects of husbandry systems , 2017 .
[23] O. Liberg,et al. Recovery of large carnivores in Europe’s modern human-dominated landscapes , 2014, Science.
[24] Eliot J. B. McIntire,et al. Predicting spatio-temporal recolonization of large carnivore populations and livestock depredation risk: wolves in the Italian Alps , 2010 .
[25] B. Jędrzejewska,et al. Habitat suitability model for Polish wolves based on long‐term national census , 2008 .
[26] J. L. Gittleman,et al. Constraints on group size in primates and carnivores: population density and day-range as assays of exploitation competition , 1993, Behavioral Ecology and Sociobiology.
[27] S. Uthes,et al. Farm-level indicators for crop and landscape diversity derived from agricultural beneficiaries data , 2020 .